Laboratoire de Physique des Solides, CNRS, UMR 8502, Université Paris-Saclay, F-91405 Orsay, France.
Institut des Sciences Moléculaires d'Orsay, CNRS, UMR 8214, Université Paris-Saclay, F-91405 Orsay, France.
ACS Nano. 2023 Feb 28;17(4):3452-3464. doi: 10.1021/acsnano.2c09571. Epub 2023 Feb 6.
Scanning transmission electron microscopy coupled with electron energy loss spectroscopy (STEM-EELS) provides spatially resolved chemical information down to the atomic scale. However, studying radiation-sensitive specimens such as organic-inorganic composites remains extremely challenging. Here, we analyzed metal-organic framework nanoparticles (nanoMOFs) at low-dose (10 e/Å) and liquid nitrogen temperatures, similar to cryo-TEM conditions usually employed for high-resolution imaging of biological specimens. Our results demonstrate that monochromated STEM-EELS enables damage-free analysis of nanoMOFs, providing in a single experiment, signatures of intact functional groups comparable with infrared, ultraviolet, and X-ray data, with an energy resolution down to 7 meV. The signals have been mapped at the nanoscale (<10 nm) for each of these energy spectral ranges, including the chemical features observed for high energy losses (X-ray range). By controlling beam irradiation and monitoring spectral changes, our work provides insights into the possible pathways of chemical reactions occurring under electron exposure. These results demonstrate the possibilities for characterizing at the nanoscale the chemistry of sensitive systems such as organic and biological materials.
扫描透射电子显微镜结合电子能量损失谱(STEM-EELS)可提供原子尺度的空间分辨化学信息。然而,研究像有机-无机复合材料这样对辐射敏感的样本仍然极具挑战性。在这里,我们在低剂量(10 e/Å)和液氮温度下分析了金属有机骨架纳米粒子(nanoMOFs),类似于通常用于生物样本高分辨率成像的 cryo-TEM 条件。我们的结果表明,单色 STEM-EELS 可实现对 nanoMOFs 的无损分析,在单个实验中提供与红外、紫外和 X 射线数据相当的完整官能团特征,能量分辨率可达 7 meV。这些信号已在纳米尺度(<10nm)下对每个能谱范围进行了映射,包括在高能损失(X 射线范围)下观察到的化学特征。通过控制束辐照并监测光谱变化,我们的工作为理解在电子照射下发生的化学反应的可能途径提供了线索。这些结果表明了在纳米尺度上对敏感系统(如有机和生物材料)的化学特性进行表征的可能性。